BA00372P/00/EN/18.16
71336350
Valid from software version: 04.00.zz
Products |
Solutions |
Services |
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Operating Instructions
Deltapilot S FMB70
Hydrostatic Level Measurement
Deltapilot S FMB70 with FOUNDATION Fieldbus
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Order code: |
XXXXX-XXXXXX |
1. |
Ser. no.: |
XXXXXXXXXXXX |
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Serial number |
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2. |
www.endress.com/deviceviewer |
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Endress+Hauser |
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Operations App |
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3.
A0023555
Make sure the document is stored in a safe place such that it is always available when working on or with the device.
To avoid danger to individuals or the facility, read the "Basic safety instructions" section carefully, as well as all other safety instructions in the document that are specific to working procedures.
The manufacturer reserves the right to modify technical data without prior notice. Your Endress+Hauser Sales Center will supply you with current information and updates to these Instructions.
2 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus
Table of contents
1 |
Document information . . . . . . . . . . . . . |
. 4 |
1.1 |
Document function . . . . . . . . . . . . . . . . . . . . . . . . . |
. 4 |
1.2 |
Symbols used . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . |
. 4 |
1.3 |
Registered trademarks . . . . . . . . . . . . . . . . . . . . . . |
. 5 |
1.4 |
Terms and abbreviations . . . . . . . . . . . . . . . . . . . . |
. 6 |
1.5 |
Turn down calculation . . . . . . . . . . . . . . . . . . . . . . |
. 7 |
2 |
Basic safety instructions . . . . . . . . . . . . |
. 8 |
2.1 |
Requirements concerning the staff . . . . . . . . . . . . |
. 8 |
2.2 |
Designated use . . . . . . . . . . . . . . . . . . . . . . . . . . . . |
. 8 |
2.3 |
Workplace safety . . . . . . . . . . . . . . . . . . . . . . . . . . |
. 8 |
2.4 |
Operational safety . . . . . . . . . . . . . . . . . . . . . . . . . . |
. 8 |
2.5 |
Hazardous area . . . . . . . . . . . . . . . . . . . . . . . . . . . . |
. 9 |
2.6 |
Product safety . . . . . . . . . . . . . . . . . . . . . . . . . . . . . |
. 9 |
3 |
Identification . . . . . . . . . . . . . . . . . . . . . |
10 |
3.1 |
Product identification . . . . . . . . . . . . . . . . . . . . . . |
10 |
3.2 |
Device designation . . . . . . . . . . . . . . . . . . . . . . . . |
10 |
3.3 |
Scope of delivery . . . . . . . . . . . . . . . . . . . . . . . . . . |
12 |
3.4 |
CE mark, Declaration of Conformity . . . . . . . . . . |
12 |
4 |
Installation . . . . . . . . . . . . . . . . . . . . . . . |
13 |
4.1 |
Incoming acceptance and storage . . . . . . . . . . . . |
13 |
4.2 |
Installation conditions . . . . . . . . . . . . . . . . . . . . . |
13 |
4.3 |
General installation instructions . . . . . . . . . . . . . |
13 |
4.4 |
Installation instructions . . . . . . . . . . . . . . . . . . . . |
13 |
4.5 |
Post-installation check . . . . . . . . . . . . . . . . . . . . . |
19 |
5 |
Wiring . . . . . . . . . . . . . . . . . . . . . . . . . . . |
20 |
5.1 |
Connecting the device . . . . . . . . . . . . . . . . . . . . . |
20 |
5.2 |
Connecting the measuring unit . . . . . . . . . . . . . . |
21 |
5.3 |
Overvoltage protection (optional) . . . . . . . . . . . . |
22 |
5.4 |
Post-connection check . . . . . . . . . . . . . . . . . . . . . |
22 |
6 |
Operation. . . . . . . . . . . . . . . . . . . . . . . . . |
23 |
6.1 |
Onsite display (optional) . . . . . . . . . . . . . . . . . . . |
23 |
6.2 |
Operating elements . . . . . . . . . . . . . . . . . . . . . . . |
25 |
6.3 |
FOUNDATION Fieldbus interface . . . . . . . . . . . . |
28 |
6.4 |
Local operation – onsite display connected . . . . |
40 |
6.5 |
FieldCare . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . |
43 |
6.6 |
HistoROM®/M-DAT (optional) . . . . . . . . . . . . . . |
43 |
6.7 |
Locking/unlocking operation . . . . . . . . . . . . . . . |
46 |
6.8 |
Simulation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . |
47 |
6.9 |
Factory setting (reset) . . . . . . . . . . . . . . . . . . . . . |
47 |
7 |
Commissioning. . . . . . . . . . . . . . . . . . . . |
50 |
7.1 |
Configuring messages . . . . . . . . . . . . . . . . . . . . . |
50 |
7.2 |
Function check . . . . . . . . . . . . . . . . . . . . . . . . . . . |
50 |
7.3Commissioning via an FF configuration program . . 50
7.4Selecting the language and measuring mode . . 52
7.5 Position adjustment . . . . . . . . . . . . . . . . . . . . . . . 54
7.6 Level measurement . . . . . . . . . . . . . . . . . . . . . . . . 55 7.7 Pressure measurement . . . . . . . . . . . . . . . . . . . . . 59 7.8 Scaling the OUT parameter . . . . . . . . . . . . . . . . . . 61
7.9Configuring event behavior in accordance with
FOUNDATION Fieldbus Specification FF912 Field
Diagnostic Profile . . . . . . . . . . . . . . . . . . . . . . . . . . 62
8 Maintenance . . . . . . . . . . . . . . . . . . . . . 73
8.1 Exterior cleaning . . . . . . . . . . . . . . . . . . . . . . . . . . . 73
9 Diagnostics and troubleshooting . . . . 74
9.1 Troubleshooting . . . . . . . . . . . . . . . . . . . . . . . . . . . 74 9.2 Diagnostic information on local display . . . . . . . . 75 9.3 Diagnostic event in the operating tool . . . . . . . . . 76
9.4Diagnostic messages in the DIAGNOSTIC
Transducer Block (TRDDIAG) . . . . . . . . . . . . . . . . 77 9.5 Overview of diagnostic events . . . . . . . . . . . . . . . . 80 9.6 Response of outputs to errors . . . . . . . . . . . . . . . . 90 9.7 Confirming messages . . . . . . . . . . . . . . . . . . . . . . . 91 9.8 Repair . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 92 9.9 Repair of Ex-certified devices . . . . . . . . . . . . . . . . 92 9.10 Spare Parts . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 92 9.11 Return . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 92 9.12 Disposal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 92 9.13 Software history . . . . . . . . . . . . . . . . . . . . . . . . . . . 93
10 Technical data . . . . . . . . . . . . . . . . . . . . 94
Index . . . . . . . . . . . . . . . . . . . . . . . . . . . . 95
Endress+Hauser |
3 |
Document information |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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These Operating Instructions contain all the information that is required in various phases of the life cycle of the device: from product identification, incoming acceptance and storage, to mounting, connection, operation and commissioning through to troubleshooting, maintenance and disposal.
1.2.1Safety symbols
Symbol Meaning
DANGER!
DANGER This symbol alerts you to a dangerous situation. Failure to avoid this situation will result in
A0011189-DE seriousor fatal injury.
WARNING!
WARNING This symbol alerts you to a dangerous situation. Failure to avoid this situation can result in
A0011190-DE seriousor fatal injury.
CAUTION!
CAUTION This symbol alerts you to a dangerous situation. Failure to avoid this situation can result in
A0011191-DE minoror medium injury.
NOTICE!
NOTICE This symbol contains information on procedures and other facts which do not result in
A0011192-DE personalinjury.
1.2.2Electrical symbols
Symbol |
Meaning |
Symbol |
Meaning |
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Direct current |
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Alternating current |
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Direct current and alternating current |
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Ground connection |
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) |
A grounded terminal which, as far as |
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the operator is concerned, is grounded |
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via a grounding system. |
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Protective ground connection |
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Equipotential connection |
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A terminal which must be connected |
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A connection that has to be connected |
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to ground prior to establishing any |
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to the plant grounding system: This |
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other connections. |
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may be a potential equalization line or |
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a star grounding system depending on |
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national or company codes of practice. |
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1.2.3Tool symbols
Symbol |
Meaning |
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Allen key |
A0011221
Hexagon wrench
A0011222
4 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Document information |
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1.2.4Symbols for certain types of information
Symbol Meaning
Permitted
Indicates procedures, processes or actions that are permitted.
A0011182
Forbidden
Indicates procedures, processes or actions that are forbidden.
A0011184
Tip
Indicates additional information.
A0011193
Reference to documentation
A0028658
Reference to page
A
A0028659
Reference to graphic
A0028660
Series of steps
1. , 2. , 3. …
A0031595
Result of a sequence of actions
A0018343
Visual inspection
A0028673
1.2.5Symbols in graphics
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Symbol |
Meaning |
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1, 2, 3, 4, ... |
Item numbers |
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Series of steps |
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1. |
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2. |
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3. |
… |
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A0031595 |
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A, B, C, D, ... |
Views |
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1.2.6Symbols at the device
Symbol Meaning
Safety instructions
Observe the safety instructions contained in the associated Operating Instructions.
A0019159
KALREZ, VITON, TEFLON
Registered trademarks of E.I. Du Pont de Nemours & Co., Wilmington, USA
TRI-CLAMP
Registered trademark of Ladish & Co., Inc., Kenosha, USA
FOUNDATIONTM Fieldbus
Registered trademark of the FieldComm Group, Austin, USA
GORE-TEX®
Registered trademarks of W.L. Gore & Associates, Inc., USA
Endress+Hauser |
5 |
Document information |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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1 |
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2 |
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3 |
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4 |
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p |
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0 |
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LRL |
LRV |
URV |
URL |
MWP |
OPL |
A0029505
Position |
Term/Abbreviation |
Explanation |
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1 |
OPL |
The OPL (over pressure limit = sensor overload limit) for the sensors |
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depends on the lowest-rated element, with regard to pressure, of the |
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selected components, i.e. the process connection must be taken into |
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consideration in addition to the measuring cell. Also observe pressure- |
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temperature dependency. For the relevant standards and additional notes, |
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see technical information. |
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The OPL may be applied for a limited time period. |
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2 |
MWP |
The MWP (maximum working pressure) for the sensors depends on the |
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lowest-rated element, with regard to pressure, of the selected components, |
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i.e. the process connection has to be taken into consideration in addition to |
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the measuring cell. Also observe pressure-temperature dependency. For the |
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relevant standards and additional notes, see technical information. |
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The MWP may be applied for an unlimited time. |
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3 |
Maximum sensor |
Range between LRL and URL |
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measuring range |
This span is the maximum calibratable/adjustable measuring span. |
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4 |
Calibrated/Adjusted |
Range between LRV and URV |
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measuring span |
Factory setting: 0...URL |
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Other calibrated spans can be ordered with customised settings. |
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p |
- |
Pressure |
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LRL |
Lower range limit |
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URL |
Upper range limit |
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LRV |
Lower range value |
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- |
URV |
Upper range value |
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TD |
Turn down |
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6 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Document information |
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1 = 2 |
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3 |
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LRL LRV |
URV |
URL |
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A0029545
Fig. 1:
1Calibrated/Adjusted measuring span
2Zero-based span
3Upper range limit
Example
• Sensor: 10 bar (150 psi) |
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• Calibrated/Adjusted measuring span: 0...5 bar |
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• Upper range limit (URL) = 10 bar (150 psi) |
(0...75 psi) |
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• Lower range value (LRV) = 0 bar |
Turn down (TD): |
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• Upper range value (URV) = 5 bar (75 psi) |
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TD |
= |
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URL |
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|URV |
- |
LRV| |
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TD |
= |
10 bar (150 psi) |
= 2 |
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|5 bar (75 psi) |
- |
0 bar (0 psi)| |
In this example, the TD is thus 2:1.
This span is based on the zero point.
Endress+Hauser |
7 |
Basic safety instructions |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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The personnel for installation, commissioning, diagnostics and maintenance must fulfill the following requirements:
•Trained, qualified specialists: must have a relevant qualification for this specific function and task
•Are authorized by the plant owner/operator
•Are familiar with federal/national regulations
•Before beginning work, the specialist staff must have read and understood the instructions in the Operating Instructions and supplementary documentation as well as in the certificates (depending on the application)
•Following instructions and basic conditions
The operating personnel must fulfill the following requirements:
•Being instructed and authorized according to the requirements of the task by the facility's owner-operator
•Following the instructions in these Operating Instructions
The Deltapilot S is a hydrostatic pressure transmitter for measuring level and pressure.
2.2.1Incorrect use
The manufacturer is not liable for damage caused by improper or non-designated use. Verification for borderline cases:
For special fluids and fluids for cleaning, Endress+Hauser is glad to provide assistance in verifying the corrosion resistance of fluid-wetted materials, but does not accept any warranty or liability.
For work on and with the device:
•Wear the required personal protective equipment according to federal/national regulations.
•Switch off the supply voltage before connecting the device.
Risk of injury!
Operate the device in proper technical condition and fail-safe condition only.
The operator is responsible for interference-free operation of the device.
Conversions to the device
Unauthorized modifications to the device are not permitted and can lead to unforeseeable dangers:
If, despite this, modifications are required, consult with Endress+Hauser.
Repair
To ensure continued operational safety and reliability,
Carry out repairs on the device only if they are expressly permitted.
Observe federal/national regulations pertaining to repair of an electrical device.
Use original spare parts and accessories from Endress+Hauser only.
8 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Basic safety instructions |
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To eliminate a danger for persons or for the facility when the device is used in the hazardous area (e.g. explosion protection, pressure vessel safety):
•Based on the nameplate, check whether the ordered device is permitted for the intended use in the hazardous area.
•Observe the specifications in the separate supplementary documentation that is an integral part of these Instructions.
This measuring device is designed in accordance with good engineering practice to meet state-of-the- art safety requirements, has been tested, and left the factory in a condition in which they are safe to operate. It fulfills general safety requirements and legal requirements. It also conforms to the EC directives listed in the device-specific EC declaration of conformity. Endress+Hauser confirms this fact by applying the CE mark.
Endress+Hauser |
9 |
Identification |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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The following options are available for identification of the measuring device:
•Nameplate specifications
•Order code with breakdown of the device features on the delivery note
•Enter serial numbers from nameplates in W@M Device Viewer (www.endress.com/deviceviewer): All information about the measuring device is displayed.
For an overview of the technical documentation provided, enter the serial number from the nameplates in the W@M Device Viewer (www.endress.com/deviceviewer).
3.2.1Nameplates
•The MWP (maximum working pressure) is specified on the nameplate. This value refers to a reference temperature of +20 °C (68°F) and may be applied to the device for an unlimited time. Observe temperature dependency of the MWP. The pressure values permitted at higher temperatures can be found in the standards EN 1092-1: 2001 Tab. 18 (With regard to their stability-temperature property, the materials 1.4435 and 1.4404 are grouped together under 13EO in EN 1092-1 Tab. 18. The chemical composition of the two materials can be identical.), ASME B 16.5a – 1998 Tab. 2-2.2 F316, ASME B 16.5a – 1998 Tab. 2.3.8 N10276, JIS B 2220.
•The test pressure corresponds to the over pressure limit (OPL) of the device = MWP x 1.5.
•The Pressure Equipment Directive (2014/68/EU) uses the abbreviation "PS".
The abbreviation "PS" corresponds to the MWP (maximum working pressure) of the measuring device.
Aluminum housing (T14/T15)
1
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3
4
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Order code: |
Ser. no.: |
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Ext. order code: |
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5
6
A0016056
Fig. 2: |
Nameplate |
1Device name
2Order code (for re-orders)
3Extended order code (complete)
4Technical data
5Serial number (for identification)
6Address of manufacturer
10 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Identification |
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Devices for use in hazardous areas are fitted with an additional nameplate.
1
2
A0021222
Fig. 3: Additional nameplate
1Approval-specific information
2Document number for safety instructions or drawing number
Hygenic stainless steel housing (T17)
1
2
3
4
5
6
Order code:
Ext. ord. cd.:
Ser. no.:
7
A0021552
Fig. 4: |
Nameplate |
1Device name
2Address of manufacturer
3Order code (for re-orders)
4Extended order code (complete)
5Serial number (for identification)
6Technical data
7Approval-specific information and document number for safety instructions or drawing number
3.2.2Identifying the sensor type
See parameter "Sensor Meas.Type" in Operating Instruction BA00303P.
Endress+Hauser |
11 |
Identification |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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The scope of delivery comprises:
•Hydrostatic pressure sensor Deltapilot S
•For devices with the "HistoROM/M-DAT" option: CD-ROM with Endress+Hauser operating program
•Optional accessories
Documentation supplied:
•The Operating Instructions BA00372P and BA00303P are available via the Internet.See: www.endress.com Download.
•Brief Operating Instructions KA01026P
•Fold-out brochure KA00252P
•Final inspection report
•Additional safety instructions for Ex devices
•Optional: factory calibration form, test certificates
The devices are designed to meet state-of-the-art safety requirements, have been tested and left the factory in a condition in which they are safe to operate. The devices comply with the applicable standards and regulations as listed in the EC Declaration of Conformity and thus comply with the statutory requirements of the EC Directives. Endress+Hauser confirms the conformity of the device by affixing to it the CE mark.
12 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Installation |
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4.1.1Incoming acceptance
•Check the packaging and the contents for damage.
•Check the shipment, make sure nothing is missing and that the scope of supply matches your order.
4.1.2Transport
! WARNING
Incorrect transportation
Housing and diaphragm may become damaged, and there is a risk of injury!
Transport the measuring device to the measuring point in its original packaging or by the process connection (with secure transport protection for the diaphragm).
Follow the safety instructions and transport conditions for devices weighing more than 18 kg (39.6 lbs).
4.1.3Storage
The device must be stored in a dry, clean area and protected against impact (EN 837-2).
Storage temperature range:
•–40 to +90 °C (–40 to +194°F)
•Onsite display: –40 to +85°C (–40 to +185°F)
•Separate housing: –40 to +60°C (–40 to +140°F)
4.2.1Dimensions
For dimensions, please refer to the Technical Information for Deltapilot S TI00416P, "Mechanical construction" section.
•Devices with a G 1 1/2 thread:
When screwing the device into the tank, the flat seal has to be positioned on the sealing surface of the process connection. To avoid additional strain on the process isolating diaphragm, the thread should never be sealed with hemp or similar materials.
•Devices with NPT threads:
–Wrap Teflon tape around the thread to seal it.
–Tighten the device at the hexagonal bolt only. Do not turn at the housing.
–Do not overtighten the thread when screwing. Max. torque: 20 to 30 Nm (14.75 to 22.13 lbf ft)
•Due to the orientation of the Deltapilot S, there may be a shift in the zero point, i.e. when the container is empty or partially full, the measured value does not display zero. You can correct this zero point shift using the "Zero" key on the electronic insert or externally on the device or via the onsite display. See ä 25, Section 6.2.1 "Position of the operating
Endress+Hauser |
13 |
Installation |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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elements", ä 26, Section 6.2.2 "Function of the operating elements – onsite display not connected" and ä 54, Section 7.5 "Position adjustment".
•To ensure optimal readability of the onsite display, it is possible to rotate the housing up to 380°. See ä 18, Section 4.4.5 "Rotating the housing".
•Endress+Hauser offers a mounting bracket for installations on pipes or walls. See ä 16, Section 4.4.3 "Wall and pipe mounting (optional)".
4.4.1Installation instructions
NOTICE
Damage to the device!
If a heated Deltapilot S is cooled during the cleaning process (e.g. by cold water), a vacuum develops for a short time, whereby moisture can penetrate the sensor through the pressure compensation (1).
If this is the case, mount the sensor with the pressure compensation (1) pointing downwards.
1
1
1
•Keep the pressure compensation and GORE-TEX® filter (1) free from contamination.
•Do not clean or touch the process isolating diaphragm with hard or pointed objects.
•The device must be installed as follows in order to comply with the cleanability requirements of the ASME-BPE (Part SD Cleanability):
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Deltapilot S FMB70 with FOUNDATION Fieldbus |
Installation |
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Level measurement
P01-PMP75xxx-11-xx-xx-xx-000 |
Fig. 5: Measuring arrangement for level
•Always install the device below the lowest measuring point.
•Do not install the device at the following positions:
–in the filling curtain
–in the tank outflow
–in the suction area of a pump
–or at a point in the tank that can be affected by pressure pulses from the agitator
•The calibration and functional test can be carried out more easily if you mount the device downstream of a shutoff device.
•Deltapilot S must be included in the insulation for media that can harden when cold.
Pressure measurement in gases
•Mount Deltapilot S with shutoff device above the tapping point so that any condensate can flow into the process.
Pressure measurement in steams
•Mount Deltapilot S with siphon above the tapping point.
•Fill the siphon with liquid before commissioning.
The siphon reduces the temperature to almost the ambient temperature.
Pressure measurement in liquids
• Mount Deltapilot S with the shutoff device below or at the same level as the tapping point.
Endress+Hauser |
15 |
Installation |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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4.4.2Seal for flange mounting
NOTICE
Corrupted measurement results.
The seal is not allowed to press against the process isolating diaphragm as this could affect the measurement result.
Ensure that the seal is not touching the process isolating diaphragm.
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1 |
2 |
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A0017743 |
Fig. 6: |
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1 |
Process isolating diaphragm |
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2 |
Seal |
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4.4.3Wall and pipe mounting (optional)
Endress+Hauser offers a mounting bracket for installation on pipes or walls (for pipe diameters from 1 ¼" to 2").
(2.76) |
3.39) |
70 |
86( |
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122 (4.8) |
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158 (6.22) |
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ø42...60 (1.65...2.36) |
(2.05) |
(0.24) |
52 |
ø6 |
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140 (5.51) |
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175 (6.89) |
A0028493
Engineering unit mm (in)
Please note the following when mounting:
•Devices with capillary tubes: mount capillaries with a bending radius 100 mm (3.94 in).
•When mounting on a pipe, tighten the nuts on the bracket uniformly with a torque of at least 5 Nm (3.69 lbs ft).
16 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Installation |
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4.4.4Assembling and mounting the "separate housing" version
7
6
8
5 3
2
1 |
r 120 mm |
P01-FMB70xxx-11-xx-xx-xx-003
Fig. 7: "Separate housing" version
1In the "separate housing" version, the sensor is supplied with the process connection and cable ready-fitted.
2Cable with connection jack
3Pressure compensation
5Connector
6Locking screw
7Housing fitted with housing adapter, included
8Mounting bracket suitable for wall and pipe mounting, included
Assembly and mounting
1.Plug the connector (item 5) into the corresponding connection jack of the cable (item 2).
2.Plug the cable into the housing adapter (item 7).
3.Tighten the locking screw (item 6).
4.Mount the housing on a wall or pipe using the mounting bracket (item 8).
When mounting on a pipe, tighten the nuts on the bracket uniformly with a torque of at least 5 Nm (3.69 lbs ft).
Mount the cable with a bending radius (r) 120 mm (4.72 in).
Endress+Hauser |
17 |
Installation |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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4.4.5Rotating the housing
The housing can be rotated up to 380° by loosening the Allen screw.
T14 |
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T15 |
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T17 |
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2 |
3 |
A0019996
1. T14 housing: Loosen setscrew with a 2 mm (0.08 in) Allen key.
T15 andT17 housing: Loosen setscrew with a 3 mm (0.12 in) Allen key.
2.Rotate housing (max. up to 380 °).
3.Retighten setscrew with 1 Nm (0,74 lbf ft.
4.4.6Closing the housing cover
NOTICE
Devices with EPDM cover seal - transmitter leakiness!
Mineral-based, animal-based or vegetable-based lubricants cause the EPDM cover seal to swell and the transmitter to become leaky.
The thread is coated at the factory and therefore does not require any lubrication.
NOTICE
The housing cover can no longer be closed.
Damaged thread!
When closing the housing cover, please ensure that the thread of the cover and housing are free from dirt, e.g. sand.If you feel any resistance when closing the cover, check the thread on both again to ensure that they are free from dirt.
Close cover on a hygenic stainless steel housing (T17)
P01-FMB70xxx-17-xx-xx-xx-001
Fig. 8: |
Close cover |
The covers for the terminal and electronics compartment are hooked into the casing and closed with a screw. These screws should be finger-tightened (2 Nm (1.48 lbf ft)) to the stop to ensure that the covers sit tightly.
18 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Installation |
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4.4.7Mounting of the profile seal for universal process mounting adapter
For details on mounting, see KA00096F/00/A3.
4.5Post-installation check
After installing the device, carry out the following checks:
•Are all screws firmly tightened?
•Are the housing covers screwed down tight?
Endress+Hauser |
19 |
Wiring |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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! WARNING
Risk of electric shock!
If the operating voltage is > 35 VDC: Dangerous contact voltage at terminals.
In a wet environment, do not open the cover if voltage is present.
!WARNING
Limitation of electrical safety due to incorrect connection!
•Risk of electric shock and/or explosion in hazardous areas! In a wet environment, do not open the cover if voltage is present.
•When using the measuring device in hazardous areas, installation must comply with the corresponding national standards and regulations and the Safety Instructions or Installation or Control Drawings.
•Devices with integrated overvoltage protection must be grounded.
•Protective circuits against reverse polarity, HF influences and overvoltage peaks are installed.
•The supply voltage must match the power supply on the nameplate. (See also ä 10, Section 3.2.1 "Nameplates".)
•Switch off the supply voltage before connecting the device.
•Remove the housing cover of the terminal compartment.
•Guide the cable through the gland. For cable specifications, ä 21, Section 5.2.4.
•Connect the device in accordance with the following diagram.
•Screw down the housing cover.
•Switch on the supply voltage.
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FF |
FF |
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FF |
FF |
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P01-xMx7xxxx-04-xx-xx-xx-009 |
Fig. 9: Electrical connection of FOUNDATION Fieldbus
Please refer also to Section 5.2.1 "Supply voltage", ä 21. 1 Housing
3Internal ground terminal
3External ground terminal
4Supply voltage, for version in non-hazardous area = 9 to 32 V DC
5Devices with integrated overvoltage protection are labeled OVP (overvoltage protection) here.
20 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Wiring |
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5.1.1Connecting devices with 7/8" plug
PIN assignment for 7/8" connector |
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PIN |
Meaning |
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PIN |
Meaning |
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1 |
Signal – |
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1 |
3 |
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2 |
Signal + |
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2 |
4 |
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3 |
Shield |
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4 |
Not assigned |
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A0011176 |
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For further information on the network structure and grounding and for further bus system components such as bus cables, see the relevant documentation, e.g. Operating Instructions BA00013S "FOUNDATION Fieldbus Overview" and the FOUNDATION Fieldbus Guideline.
5.2.1Supply voltage
! WARNING
Supply voltage might be connected!
Risk of electric shock and/or explosion!
When using the measuring device in hazardous areas, installation must comply with the corresponding national standards and regulations and the Safety Instructions or Installation or Control Drawings.
All explosion protection data are given in separate documentation which is available upon request. The Ex documentation is supplied as standard with all devices approved for use in explosion hazardous areas.
Version for non-hazardous area: 9 to 32 V DC
5.2.2Current consumption
15.5 mA ±1 mA, switch-on current corresponds to IEC 61158-2, Clause 21.
5.2.3Terminals
•Supply voltage and internal ground terminal: 0.5 to 2.5 mm2 (20 to 14 AWG)
•External ground terminal: 0.5 to 4 mm2 (20 to 12 AWG)
5.2.4Cable specification
•Use a twisted, shielded two-wire cable, preferably cable type A.
•Outer cable diameter: 5 to 9 mm (0.2 to 0.35 in)
For further information on the cable specifications, see Operating Instructions BA00013S "FOUNDATION Fieldbus Overview", FOUNDATION Fieldbus Guideline and IEC 61158-2 (MBP).
5.2.5Grounding and shielding
Deltapilot S must be grounded, for example by means of the external ground terminal.
Different grounding and shielding installation methods are available for FOUNDATION
Fieldbus networks such as:
•Isolated installation (see also IEC 61158-2)
•Installation with multiple grounding
Endress+Hauser |
21 |
Wiring |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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• Capacitive installation
NOTICE
Device could be destroyed!
Devices with integrated overvoltage protection must be earthed.
Devices showing version "M" in feature 100 "Additional options 1" or feature 110 "Additional options 2" in the order code are equipped with overvoltage protection ( see also Technical Information TI00416P "Ordering information").
•Overvoltage protection:
–Nominal functioning DC voltage: 600 V
–Nominal discharge current: 10 kA
•Surge current check î = 20 kA as per DIN EN 60079-14: 8/20 s satisfied
•Arrester AC current check I = 10 A satisfied
5.4Post-connection check
Perform the following checks after completing electrical installation of the device:
•Does the supply voltage match the specifications on the nameplate?
•Is the device connected as per Section 5.1?
•Are all screws firmly tightened?
•Are the housing covers screwed down tight?
As soon as voltage is applied to the device, the green LED on the electronic insert lights up for a few seconds or the connected onsite display lights up.
22 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Operation |
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Feature 20 "Output; operation" in the order code provides you with information on the operating options available to you.
Versions in the order code |
Operation |
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P |
FOUNDATION Fieldbus; external operation, LCD |
Via onsite display and 1 key on the exterior of the |
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device |
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Q |
FOUNDATION Fieldbus; internal operation, LCD |
Via onsite display and 1 key on the inside of the |
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device |
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R |
FOUNDATION Fieldbus; internal operation |
Without onsite display, 1 key on the inside of the |
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device |
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A 4-line liquid crystal display (LCD) is used for display and operation. The onsite display shows measured values, fault messages and notice messages.
The display of the device can be turned in 90° steps.
Depending on the orientation of the device, this makes it easy to operate the device and read the measured value.
Functions:
•8-digit measured value display including sign and decimal point, unit display
•Bar graph as graphic display of the current pressure measured value in relation to the set pressure range in the Pressure Transducer Block. The pressure range is set by means of the SCALE_IN parameter.
•Easy and complete menu guidance by dividing the parameters into several levels and groups
•Menu guidance
The onsite display is available in English. Needless to say, the device can also be operated in 6 languages (de, en, fr, es, jp, ch) via the DTM or EDD. The FieldCare program is an E+H DTM operating tool and can be acquired from endress.com.
•Each parameter has a 3-digit ID to aid navigation
•Option of configuring the display according to individual requirements and preferences, such as language, alternating display, contrast setting, display of other measured values such as sensor temperature
•Comprehensive diagnostic functions (fault and warning message, maximum indicator, etc.)
•Rapid and safe commissioning using Quick Setup menus
Endress+Hauser |
23 |
Operation |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
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– + E
Measured value display |
Parameter |
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Identification |
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Function name Value |
number |
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Main line |
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Unit |
Information |
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line |
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Symbol |
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Bargraph
Editing modes
Operating keys
Selection options
Value that can be edited
Current measured value
P01-xxxxxxxx-07-xx-xx-en-011
The following table illustrates the symbols that can appear on the onsite display. Four symbols can occur at one time.
Symbol |
Meaning |
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Alarm symbol
– Symbol flashing: warning, device continues measuring.
– Symbol permanently lit: error, device does not continue measuring. Note: The alarm symbol may overlie the tendency symbol.
Lock symbol
The operation of the device is locked. Unlock device, ä 46, Section 6.7 "Locking/ unlocking operation".
Communication symbol
Data transfer via communication
Simulation symbol
Simulation mode is activated. DIP switch 2 for simulation is set to "On".
See also Section 6.2.1 "Position of the operating elements" and ä 47, Section 6.8 "Simulation"
Tendency symbol (increasing)
The primary value of the Pressure Transducer Block is increasing.
Tendency symbol (decreasing)
The primary value of the Pressure Transducer Block is decreasing.
Tendency symbol (constant)
The primary value of the Pressure Transducer Block has remained constant over the past few minutes.
24 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Operation |
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6.2.1Position of the operating elements
On the aluminum housing (T14/T15), the operating key is located either under the protective flap on the exterior of the device or inside on the electronic insert. In the case of the hygienic stainless steel housing (T17), the operating key is always inside on the electronic insert. In addition, there are three operating keys on the optional onsite display.
0%
Zero
Sim.
on
off 1 2
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Simulation |
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on |
1 |
2 |
off |
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0% |
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Zero |
Sensor |
Display |
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HW |
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CP |
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HistoROM |
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P01-PMx7xxxx-19-xx-xx-xx-075 |
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P01-xxxxxxxx-19-xx-xx-xx-106 |
Fig. 10: |
External operating key, under the protective flap |
Fig. 11: |
Operating key and operating elements, internal |
1 |
Operating key for position adjustment (zero point |
1 |
Green LED to indicate value is accepted |
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correction) and total reset |
2 |
Operating key for position adjustment (zero point |
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correction) and total reset |
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3 |
Slot for optional display |
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4 |
Slot for optional HistoROM®/M-DAT |
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5 |
DIP switch for locking/unlocking parameters relevant to |
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the measured value |
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6 |
DIP switch for simulation mode |
Endress+Hauser |
25 |
Operation |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
|
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6.2.2Function of the operating elements – onsite display not connected
Operating elements
0%
Zero
P01-xxxxxxxx-19-xx-xx-xx-107
Sim.
on
1 2 off
P01-xxxxxxxx-19-xx-xx-xx-134
Meaning
–Position adjustment (zero point correction): press key for at least 3 seconds. The LED on the electronic insert lights up briefly if the pressure applied has been accepted for position adjustment.
See also the following section "Performing position adjustment on site".
–Total reset: press key for at least 12 seconds. The LED on the electronic insert lights up briefly if a reset is being carried out.
–DIP switch 1: for locking/unlocking parameters relevant to the measured value. Factory setting: off (unlocked)
See also ä 46, Section 6.7 "Locking/unlocking operation".
–DIP switch 2: for simulation mode Factory setting: off (simulation mode off)
See also ä 47, Section 6.8 "Simulation"
Performing position adjustment on site
•Operation must be unlocked. See ä 46, Section 6.7 "Locking/unlocking operation".
•The device is configured for the MEASURING MODE level and LEVEL SELECTION level easy pressure as standard.
–Operation via FF configuration program: In the Pressure Transducer Block, change the measuring mode by means of the PRIMARY_VALUE_TYPE and LINEARIZATION parameters.
–Operation via digital communication: change the measuring mode by means of the MEASURING MODE parameter.
–You can change the measuring mode by means of the MEASURING MODE parameter. See ä 52, Section 7.4 "Selecting the language and measuring mode".
•The pressure applied must be within the nominal pressure limits of the sensor. See information on the nameplate.
Perform position adjustment:
1.Pressure is present at device.
2.Press key for at least 3 seconds.
3.If the LED on the electronic insert lights up briefly, the pressure applied has been accepted for position adjustment.
If the LED does not light up, the pressure applied was not accepted. Observe the input limits. For error messages see ä 75, Section 9.2 "Diagnostic information on local display".
26 |
Endress+Hauser |
Deltapilot S FMB70 with FOUNDATION Fieldbus |
Operation |
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6.2.3Function of the operating elements – onsite display connected
Key(s)
O
S
F
Oand F
Sand F
O and S
Sim.
on
1 2 off
P01-xxxxxxxx-19-xx-xx-xx-134
Meaning
–Navigate upwards in the picklist
–Edit numerical values or characters within a function
–Navigate downwards in the picklist
–Edit numerical values or characters within a function
–Confirm entry
–Go to next item
Contrast setting of onsite display: increase
Contrast setting of onsite display: reduce
ESC functions:
–Exit the editing mode without saving the altered value
–You are in the menu within a function group: the first time you press the keys simultaneously, you go back one parameter in the function group. Every subsequent time you press the keys simultaneously, you go up one level in the menu.
–You are in the menu on a selection level: every time you press the keys simultaneously, you go up one level in the menu.
Note: For the terms function group, level, selection level, ä 40, Section 6.4.1
–DIP switch 1: for locking/unlocking parameters relevant to the measured value. Factory setting: off (unlocked)
–DIP switch 2: for the simulation mode Factory setting: off (simulation mode off)
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6.3.1System architecture
Industrial Network |
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FF-HSE |
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BT |
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FF-H1 |
SB |
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LD |
BT |
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PS |
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BT |
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PS |
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FF-H1 |
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BT |
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P01-xxxxxxxx-02-xx-xx-xx-001 |
Fig. 12: FOUNDATION Fieldbus system architecture with associated components
FF-HSE: High Speed Ethernet, FF-H1: FOUNDATION Fieldbus-H1, LD: Linking Device FF-HSE/FF-H1,
PS: bus power supply unit, SB: safety barrier, BT: bus terminator
The system can be connected in the following ways:
–A linking device makes the connection to higher-order fieldbus levels (e.g. High Speed Ethernet (HSE)) possible.
–An FF-H1 connecting card is needed for direct connection to a process control system.
Further information on FOUNDATION Fieldbus can be found in Operating Instructions BA00013S "FOUNDATION Fieldbus Overview, Installation and Commissioning Guidelines", the FOUNDATION Fieldbus Specification or on the Internet at "http://www. fieldbus.org".
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Deltapilot S FMB70 with FOUNDATION Fieldbus |
Operation |
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6.3.2Number of devices
•The Endress+Hauser Deltapilot S devices meet the requirements of the FISCO model.
•Due to the low current consumption, the following number of devices can be operated on one bus segment if installing to FISCO:
–Up to 6 Deltapilot S for Ex ia, CSA and FM IS applications
–Up to 24 Deltapilot S in all other applications, e.g. in non-hazardous areas, Ex nA etc.
The maximum number of measuring devices at one bus segment is defined by their current consumption, the performance of the bus coupler, and the required bus length.
6.3.3Operation
You can obtain special configuration and operating programs from various manufacturers for the configuration, such as the FieldCare operating program from Endress+Hauser Seeä 43, Section 6.5 "FieldCare". These configuration programs make it possible to configure FF functions and all the device-specific parameters. The predefined function blocks allow uniform access to all the network and device data.
6.3.4Network configuration
You require the following to configure a device and integrate it into an FF network:
•An FF configuration program
•The Cff file (Common File Format: *.cff, *.fhx)
•The device description (Device Description: *.sym, *.ffo, *.sy5, *.ff5)
Pre-defined standard DDs, which can be obtained from FOUNDATION Fieldbus, are available for the basic functions of measuring devices. You require the device-specific DD to be able to access all the functions.
The files for Deltapilot S can be acquired as follows:
•Internet Endress+Hauser: http://www.de.endress.com Search for FOUNDATION Fieldbus
•Internet FOUNDATION Fieldbus: http://www.fieldbus.org
•On CD-ROM from Endress+Hauser, order number: 56003896
The device is integrated into the FF network as follows:
•Start the FF configuration program.
•Download the Cff and device description files (*.ffo, *.sym, *.cff or *.fhx files) to the system.
•Configure the interface, see Note.
•Configure the device for the measuring task and for the FF system.
•For more in-depth information on integrating the device into the FF system, see the description for the configuration software used.
•When integrating the field devices into the FF system, make sure you are using the right files. You can read out the required version by means of the DEV_REV and DD_REV parameters in the Resource Block.
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6.3.5Device identification and addressing
FOUNDATION Fieldbus identifies the device using its ID code and automatically assigns it a suitable field address. The identity code cannot be changed.
The device appears in the network display once you have started the FF configuration program and integrated the device into the network. The blocks available are displayed under the device name.
If the device description has not yet been loaded, the blocks report "Unknown" or "(UNK)".
Deltapilot S reports as follows:
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– EH_DeltapilotS-XXXXXXXXXXXXXXXX
RS_XXXXXXXXXXX (RB2)
TRD1_XXXXXXXXXXX (PCD)
SERVICE_XXXXXXXXXXX (SERVICE)
DIAGNOSTIC_XXXXXXXXXXX (DIAGNOSTIC)
DISPLAY_XXXXXXXXXXX (DISP)
AI1_XXXXXXXXXXX (AI)
AI2_XXXXXXXXXXX (AI)
DI_XXXXXXXXXXX (DI)
DO_XXXXXXXXXXX (DO)
PID_XXXXXXXXXXX (PID)
ARTH_XXXXXXXXXXX (ARB)
CHAR_XXXXXXXXXXX (SCB)
ISEL_XXXXXXXXXXX (ISB)
INTG_XXXXXXXXXXX (ITB)
AALM_XXXXXXXXXXX (AALB)
P01-PMx7xxxx-05-xx-xx-xx-017
Fig. 13: Typical Deltapilot S display in a configuration program after the connection has been established.
1Device name
2Serial number
6.3.6Deltapilot S block model
With FOUNDATION Fieldbus, all the device parameters are categorized according to their functional properties and task and are generally assigned to three different blocks.
A FOUNDATION Fieldbus device has the following block types:
•A Resource Block (device block):
This block contains all the device-specific features of the device.
•One or more Transducer Blocks
A Transducer Block contains all the measuring and device-specific parameters of the device. The measuring principles, such as pressure or totalizers, are mapped in the Transducer Blocks.
•One or more function blocks:
Function blocks contain the automation functions of the device. A distinction is made between different function blocks such as the Analog Input Block or Proportional Integral Differential Block (PID). Each of these function blocks is used to execute different application functions.
The function blocks can be connected by means of an FF configuration program, depending on the automation task. The device thus takes on simple control functions, thereby relieving the workload on the higher-order process control system.
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